Lecturer(s)
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Nuruyev Jiří, doc. Mgr. CSc.
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Šabata Pavel, PaedDr. CSc.
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Nosková Lucie, Mgr. Ph.D.
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Course content
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Properties of gaseous, liquid, solid substances, chemical-physical description Nuclear chemistry, types of nuclear reactions, atom construction Construction of molecules, chemical bond Types of chemical reactions, chemical equilibrium, chemical kinetics Fundamentals of electrochemistry, electrolyte theory Chemistry of hydrogen and its compounds, chemistry of s-elements Chemistry of elements of the group of boron, carbon and nitrogen Oxygen and its compounds, chemistry of chalcogenes Chemistry of selected groups of transient elements Relationship of property properties depending on location in the periodic system Aliphatic hydrocarbons, cyclic hydrocarbons Halogenation of hydrocarbons Oxygen derivatives of hydrocarbons, Esterification, condensation reaction Nitrogen derivatives of hydrocarbons, nitration of aliphatic and aromatic compounds Sulfur derivatives of aliphatic and aromatic hydrocarbons Macromolecular substances natural and synthetic Proteins, theoretical outlets Lipids, sorting, properties, biochemical connections, membranes Carbohydrates, sorting Energetically advantageous biochemical reactions, energetically disadvantageous biochemical reactions
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Learning activities and teaching methods
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Lecture
- Preparation for an examination (30-60)
- 50 hours per semester
- Contact hours
- 39 hours per semester
- Preparation for comprehensive test (10-40)
- 15 hours per semester
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prerequisite |
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Knowledge |
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to describe basic principles and main parts of the system of general chemistry, physical chemistry and organic chemistry |
characterize the essence of biochemical processes |
Skills |
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use chemical symbolism and chemical nomenclature |
identify and describe essential nutrients - carbohydrates, lipids, proteins |
Competences |
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N/A |
learning outcomes |
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Knowledge |
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describe the structure of the atom and list the types of nuclear reactions |
to list typical reactions of individual groups of elements |
to list the basic types of reactions of organic substances |
describe biochemical reactions |
Skills |
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apply the knowledge of individual chemical disciplines to the education |
Competences |
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N/A |
teaching methods |
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Knowledge |
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Lecture |
Seminar |
Skills |
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Lecture with visual aids |
Seminar |
Competences |
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Lecture supplemented with a discussion |
Seminar |
assessment methods |
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Knowledge |
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Test |
Written exam |
Skills |
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Written exam |
Competences |
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Written exam |
Recommended literature
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BACHER P. Energie pro 21. století. Agentura KRIGL, Praha, 2003. ISBN 80-902403-7-2.
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Housecroft Catherine E., Sharpe Alan G. Anorganická chemie. VŠCHT, Praha, 2014. ISBN 978-80-7080-872-6.
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Klikorka, Jiří; Hájek, Bohumil; Votinský, Jiří. Obecná a anorganická chemie : Celost. vysokošk. učebnice pro vys. školy chemicko-technologické. Praha : SNTL, 1985.
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KODÍČEK M., VALENTOVÁ O., HYNEK R. Biochemie - chemický pohled na biologický svět. VŠCHT, Praha, 2018. ISBN 978-80-7592-013-3.
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LUKEŠ I. Systematická anorganická chemie. Praha : Karolinum, 2009. ISBN 9788024616148.
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MCMURRY, J. Organická chemie. V Praze : Vysoká škola chemicko-technologická. 2015.
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MCPHERSON P. A. C. Principles Of Nuclear Chemistry (Essential Textbooks in Chemistry). WSPC (EUROPE), 2016. ISBN 978-1786340511.
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MIČKA Z.; LUKEŠ I. Teoretické základy anorganické chemie. Praha : Karolinum, 2016. ISBN 9788024632094.
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PACÁK J. Stručné základy organické chemie. Praha : SNTL, 1978.
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ŘÍPA M., WEINZETTL V., MLYNÁŘ J., ŽÁČEK F. Řízená termojaderná syntéza pro každého. Ústav fyziky plazmatu AV ČR, Praha, 2004. ISBN 80-902724-7-9.
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SOFROVÁ, D. a kol. Biochemie - základní kurz. Karolinum. Praha, 2009. ISBN 978-80-2461-678-0.
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SVOBODA J. Organická syntéza I. VŠCHT, Praha, 2000. ISBN 80-7080-385-1.
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SVOBODA J. Sbírka příkladů z organické syntézy I. VŠCHT, Praha, 2000. ISBN 80-7080-386-X.
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Vacík, Jiří. Obecná chemie. 2. vydání. 2017. ISBN 978-80-7444-050-2.
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VODRÁŽKA Z. Biochemie. Praha : Academia. 1996.
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